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High-rate metal-free MXene microsupercapacitors on paper substrates
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High-rate metal-free MXene microsupercapacitors on paper substrates

Han Xue, Po-Han Huang, Lee-Lun Lai, Yingchun Su, Axel Strömberg, Gaolong Cao, Yuzhu Fan, Sergiy Khartsev, Mats Göthelid, Yan-Ting Sun, …
Carbon Energy, 卷.6(5), e442
05/2024

摘要

direct ink writing femtosecond laser scribing MXene on-paper microsupercapacitors PEDOT:PSS ultrahigh rate capability Renewable Energy Sustainability and the Environment Materials Science (miscellaneous) Energy (miscellaneous) Materials Chemistry
MXene is a promising energy storage material for miniaturized microbatteries and microsupercapacitors (MSCs). Despite its superior electrochemical performance, only a few studies have reported MXene-based ultrahigh-rate (>1000 mV s <sup>−1</sup> ) on-paper MSCs, mainly due to the reduced electrical conductance of MXene films deposited on paper. Herein, ultrahigh-rate metal-free on-paper MSCs based on heterogeneous MXene/poly(3,4-ethylenedioxythiophene)-poly(styrenesulfonate) (PEDOT:PSS)-stack electrodes are fabricated through the combination of direct ink writing and femtosecond laser scribing. With a footprint area of only 20 mm <sup>2</sup> , the on-paper MSCs exhibit excellent high-rate capacitive behavior with an areal capacitance of 5.7 mF cm <sup>−2</sup> and long cycle life (>95% capacitance retention after 10,000 cycles) at a high scan rate of 1000 mV s <sup>−1</sup> , outperforming most of the present on-paper MSCs. Furthermore, the heterogeneous MXene/PEDOT:PSS electrodes can interconnect individual MSCs into metal-free on-paper MSC arrays, which can also be simultaneously charged/discharged at 1000 mV s <sup>−1</sup> , showing scalable capacitive performance. The heterogeneous MXene/PEDOT:PSS stacks are a promising electrode structure for on-paper MSCs to serve as ultrafast miniaturized energy storage components for emerging paper electronics.

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